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Based on 1 normalized pattern(s): this program is free software you can redistribute it and or modify it under the terms of the gnu general public license as published by the free software foundation either version 2 of the license or at your option any later version extracted by the scancode license scanner the SPDX license identifier GPL-2.0-or-later has been chosen to replace the boilerplate/reference in 3029 file(s). Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Reviewed-by: Allison Randal <allison@lohutok.net> Cc: linux-spdx@vger.kernel.org Link: https://lkml.kernel.org/r/20190527070032.746973796@linutronix.de Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
170 lines
6.8 KiB
C
170 lines
6.8 KiB
C
/* SPDX-License-Identifier: GPL-2.0-or-later */
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/*
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* mace.h - definitions for the registers in the Am79C940 MACE
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* (Medium Access Control for Ethernet) controller.
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*
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* Copyright (C) 1996 Paul Mackerras.
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*/
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#define REG(x) volatile unsigned char x; char x ## _pad[15]
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struct mace {
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REG(rcvfifo); /* receive FIFO */
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REG(xmtfifo); /* transmit FIFO */
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REG(xmtfc); /* transmit frame control */
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REG(xmtfs); /* transmit frame status */
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REG(xmtrc); /* transmit retry count */
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REG(rcvfc); /* receive frame control */
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REG(rcvfs); /* receive frame status (4 bytes) */
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REG(fifofc); /* FIFO frame count */
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REG(ir); /* interrupt register */
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REG(imr); /* interrupt mask register */
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REG(pr); /* poll register */
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REG(biucc); /* bus interface unit config control */
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REG(fifocc); /* FIFO configuration control */
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REG(maccc); /* medium access control config control */
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REG(plscc); /* phys layer signalling config control */
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REG(phycc); /* physical configuration control */
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REG(chipid_lo); /* chip ID, lsb */
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REG(chipid_hi); /* chip ID, msb */
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REG(iac); /* internal address config */
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REG(reg19);
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REG(ladrf); /* logical address filter (8 bytes) */
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REG(padr); /* physical address (6 bytes) */
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REG(reg22);
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REG(reg23);
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REG(mpc); /* missed packet count (clears when read) */
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REG(reg25);
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REG(rntpc); /* runt packet count (clears when read) */
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REG(rcvcc); /* recv collision count (clears when read) */
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REG(reg28);
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REG(utr); /* user test reg */
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REG(reg30);
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REG(reg31);
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};
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/* Bits in XMTFC */
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#define DRTRY 0x80 /* don't retry transmission after collision */
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#define DXMTFCS 0x08 /* don't append FCS to transmitted frame */
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#define AUTO_PAD_XMIT 0x01 /* auto-pad short packets on transmission */
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/* Bits in XMTFS: only valid when XMTSV is set in PR and XMTFS */
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#define XMTSV 0x80 /* transmit status (i.e. XMTFS) valid */
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#define UFLO 0x40 /* underflow - xmit fifo ran dry */
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#define LCOL 0x20 /* late collision (transmission aborted) */
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#define MORE 0x10 /* 2 or more retries needed to xmit frame */
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#define ONE 0x08 /* 1 retry needed to xmit frame */
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#define DEFER 0x04 /* MACE had to defer xmission (enet busy) */
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#define LCAR 0x02 /* loss of carrier (transmission aborted) */
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#define RTRY 0x01 /* too many retries (transmission aborted) */
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/* Bits in XMTRC: only valid when XMTSV is set in PR (and XMTFS) */
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#define EXDEF 0x80 /* had to defer for excessive time */
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#define RETRY_MASK 0x0f /* number of retries (0 - 15) */
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/* Bits in RCVFC */
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#define LLRCV 0x08 /* low latency receive: early DMA request */
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#define M_RBAR 0x04 /* sets function of EAM/R pin */
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#define AUTO_STRIP_RCV 0x01 /* auto-strip short LLC frames on recv */
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/*
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* Bits in RCVFS. After a frame is received, four bytes of status
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* are automatically read from this register and appended to the frame
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* data in memory. These are:
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* Byte 0 and 1: message byte count and frame status
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* Byte 2: runt packet count
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* Byte 3: receive collision count
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*/
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#define RS_OFLO 0x8000 /* receive FIFO overflowed */
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#define RS_CLSN 0x4000 /* received frame suffered (late) collision */
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#define RS_FRAMERR 0x2000 /* framing error flag */
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#define RS_FCSERR 0x1000 /* frame had FCS error */
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#define RS_COUNT 0x0fff /* mask for byte count field */
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/* Bits (fields) in FIFOFC */
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#define RCVFC_SH 4 /* receive frame count in FIFO */
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#define RCVFC_MASK 0x0f
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#define XMTFC_SH 0 /* transmit frame count in FIFO */
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#define XMTFC_MASK 0x0f
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/*
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* Bits in IR and IMR. The IR clears itself when read.
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* Setting a bit in the IMR will disable the corresponding interrupt.
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*/
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#define JABBER 0x80 /* jabber error - 10baseT xmission too long */
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#define BABBLE 0x40 /* babble - xmitter xmitting for too long */
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#define CERR 0x20 /* collision err - no SQE test (heartbeat) */
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#define RCVCCO 0x10 /* RCVCC overflow */
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#define RNTPCO 0x08 /* RNTPC overflow */
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#define MPCO 0x04 /* MPC overflow */
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#define RCVINT 0x02 /* receive interrupt */
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#define XMTINT 0x01 /* transmitter interrupt */
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/* Bits in PR */
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#define XMTSV 0x80 /* XMTFS valid (same as in XMTFS) */
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#define TDTREQ 0x40 /* set when xmit fifo is requesting data */
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#define RDTREQ 0x20 /* set when recv fifo requests data xfer */
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/* Bits in BIUCC */
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#define BSWP 0x40 /* byte swap, i.e. big-endian bus */
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#define XMTSP_4 0x00 /* start xmitting when 4 bytes in FIFO */
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#define XMTSP_16 0x10 /* start xmitting when 16 bytes in FIFO */
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#define XMTSP_64 0x20 /* start xmitting when 64 bytes in FIFO */
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#define XMTSP_112 0x30 /* start xmitting when 112 bytes in FIFO */
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#define SWRST 0x01 /* software reset */
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/* Bits in FIFOCC */
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#define XMTFW_8 0x00 /* xmit fifo watermark = 8 words free */
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#define XMTFW_16 0x40 /* 16 words free */
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#define XMTFW_32 0x80 /* 32 words free */
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#define RCVFW_16 0x00 /* recv fifo watermark = 16 bytes avail */
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#define RCVFW_32 0x10 /* 32 bytes avail */
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#define RCVFW_64 0x20 /* 64 bytes avail */
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#define XMTFWU 0x08 /* xmit fifo watermark update enable */
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#define RCVFWU 0x04 /* recv fifo watermark update enable */
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#define XMTBRST 0x02 /* enable transmit burst mode */
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#define RCVBRST 0x01 /* enable receive burst mode */
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/* Bits in MACCC */
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#define PROM 0x80 /* promiscuous mode */
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#define DXMT2PD 0x40 /* disable xmit two-part deferral algorithm */
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#define EMBA 0x20 /* enable modified backoff algorithm */
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#define DRCVPA 0x08 /* disable receiving physical address */
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#define DRCVBC 0x04 /* disable receiving broadcasts */
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#define ENXMT 0x02 /* enable transmitter */
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#define ENRCV 0x01 /* enable receiver */
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/* Bits in PLSCC */
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#define XMTSEL 0x08 /* select DO+/DO- state when idle */
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#define PORTSEL_AUI 0x00 /* select AUI port */
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#define PORTSEL_10T 0x02 /* select 10Base-T port */
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#define PORTSEL_DAI 0x04 /* select DAI port */
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#define PORTSEL_GPSI 0x06 /* select GPSI port */
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#define ENPLSIO 0x01 /* enable optional PLS I/O pins */
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/* Bits in PHYCC */
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#define LNKFL 0x80 /* reports 10Base-T link failure */
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#define DLNKTST 0x40 /* disable 10Base-T link test */
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#define REVPOL 0x20 /* 10Base-T receiver polarity reversed */
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#define DAPC 0x10 /* disable auto receiver polarity correction */
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#define LRT 0x08 /* low receive threshold for long links */
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#define ASEL 0x04 /* auto-select AUI or 10Base-T port */
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#define RWAKE 0x02 /* remote wake function */
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#define AWAKE 0x01 /* auto wake function */
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/* Bits in IAC */
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#define ADDRCHG 0x80 /* request address change */
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#define PHYADDR 0x04 /* access physical address */
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#define LOGADDR 0x02 /* access multicast filter */
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/* Bits in UTR */
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#define RTRE 0x80 /* reserved test register enable. DON'T SET. */
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#define RTRD 0x40 /* reserved test register disable. Sticky */
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#define RPAC 0x20 /* accept runt packets */
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#define FCOLL 0x10 /* force collision */
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#define RCVFCSE 0x08 /* receive FCS enable */
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#define LOOP_NONE 0x00 /* no loopback */
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#define LOOP_EXT 0x02 /* external loopback */
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#define LOOP_INT 0x04 /* internal loopback, excludes MENDEC */
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#define LOOP_MENDEC 0x06 /* internal loopback, includes MENDEC */
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